The secret key~private key capacity region for three terminals
Chunxuan Ye, Prakash Narayan
Abstract
Chunxuan Ye, Prakash Narayan
Abstract
We consider a model for secrecy generation, with three terminals, by means of public interterminal communication, and examine the problem of characterizing all the rates at which all three terminals can generate a "secret key," and - simultaneously - two designated terminals can generate a "private key" which is effectively concealed from the remaining terminal; both keys are also concealed from an eavesdropper that observes the public communication. Inner and outer bounds for the "secret key-private key capacity region" are derived. Under a certain special condition, these bounds coincide to yield the (exact) secret key-private key capacity region
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We consider a model for secrecy generation, with three terminals, by means of public interterminal communication, and examine the problem of characterizing all the rates at which all three terminals can generate a "secret key," and - simultaneously - two designated terminals can generate a "private key" which is effectively concealed from the remaining terminal; both keys are also concealed from an eavesdropper that observes the public communication. Inner and outer bounds for the "secret key-private key capacity region" are derived. Under a certain special condition, these bounds coincide to yield the (exact) secret key-private key capacity region
Key concepts: Secrecy, Key (lock), Pre-shared key, Public-key cryptography, Key generation, Computer science, Computer security, Key distribution